IP Library Granted Patent US 9,961,841
Granted Patent B2
US 9,961,841 · App. 15/253,926 · Granted May 8, 2018

Plant illumination device and method

Inventors: Lars Aikala (Lapinkylä, FI); Ilkka Kivimäki (Helsinki, FI)
Assignee: VALOYA OY
A01G7/045A01G9/20H01L33/06H01L33/504Y02P60/149
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Quick Facts
Patent No.
US 9,961,841
App. No.
15/253,926
Granted
May 8, 2018
Kind
B2
Abstract

An improved method to produce artificial light for plant cultivation, an illumination device with a semiconductor light emission solution and device suited for plant cultivation in a greenhouse environment are described. The best mode is considered to be a lighting device with binary alloy quantum dots ( 110, 120, 130, 140, 150, 160 ) made by colloidal methods to produce a size distribution of quantum dots that produces an emission spectrum similar to the photosynthetically active radiation (PAR) spectrum. The methods and arrangements allow more precise spectral tuning of the emission spectrum for lights used in plant ( 310, 311 ) cultivation. Therefore unexpected improvements in the photomorphogenetic control of plant growth, and further improvements in plant production are realized.

Claims (15)

1. A plant cultivation method, the method comprising:

illuminating at least one plant with a horticultural lighting fixture in a dark cavity with zero sunlight, the horticultural lighting fixture comprising at least one light emitting diode (LED) and at least one quantum dot,

wherein the at least one LED and the at least one quantum dot exhibit

a) main spectral characteristics in the photosynthetically active radiation (PAR) (400-700 nm) area, and

b) side spectral characteristics in the 700-800 nm area.

2. A plant cultivation method, the method comprising:

illuminating at least one plant with a horticultural lighting fixture in a dark cavity with zero sunlight, the horticultural lighting fixture comprising at least one light emitting diode (LED) and at least one quantum dot,

wherein the at least one LED and the at least one quantum dot exhibit

a) main spectral characteristics in the photosynthetically active radiation (PAR) (400-700 nm) area, and

b) first side spectral characteristics in the 300-400 nm area.

3. The method according to claim 2 , wherein the at least one LED and the at least one quantum dot further exhibit

c) second side spectral characteristics in the 700-800 nm area.

4. The method according to claim 3 , wherein emissions of 500-600 nm (green) spectral band of the main spectral characteristics are below emissions of adjacent 400-500 nm (blue) and 600-700 nm (red) spectral bands of the main spectral characteristics.

5. The method according to claim 1 , wherein emissions of 500-600 nm (green) spectral band of the main spectral characteristics are below emissions of adjacent 400-500 nm (blue) and 600-700 nm (red) spectral bands of the main spectral characteristics.

6. The method according to claim 2 , wherein emissions of 500-600 nm (green) spectral band of the main spectral characteristics are below emissions of adjacent 400-500 nm (blue) and 600-700 nm (red) spectral bands of the main spectral characteristics.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 1, 2016
From: AIKALA, LARS; KIVIMAKI, ILKKA
To: VALOYA OY
Reel/Frame 039610/0663 →
Priority Claims (1)
EP 11158693 · Mar 17, 2011 · regional
Continuity (3)
Division 13895483
Provisional Application 61468831 · Mar 29, 2011
Related Publication 20170006783A1 · Jan 12, 2017